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具有 AIEE 特性的川陈皮素靶向线粒体及其在斑马鱼中的实时动态追踪。

Nobiletin with AIEE Characteristics for Targeting Mitochondria and Real-Time Dynamic Tracking in Zebrafish.

机构信息

School of Pharmaceutical Science, Sun Yat-sen University, Guangzhou 510006, China.

出版信息

Molecules. 2023 Jun 6;28(12):4592. doi: 10.3390/molecules28124592.

Abstract

Nobiletin is a natural product with multiple physiological activities and is the main ingredient of . We successfully discovered that nobiletin exhibits aggregation induced emission enhancement (AIEE) properties and it has significant advantages such as a large Stokes shift, good stability and excellent biocompatibility. The increase in methoxy groups endows nobiletin a greater fat-solubility, bioavailability and transport rate than the corresponding unmethoxylated flavones. Ulteriorly, cells and zebrafish were used to explore the application of nobiletin in biological imaging. It emits fluorescence in cells and is specifically targeted at mitochondria. Moreover, it has a noteworthy affinity for the digestive system and liver of zebrafish. Due to the unique AIEE phenomenon and stable optical properties of nobiletin, it paves the way for discovering, modifying and synthesizing more molecules with AIEE characteristics. Furthermore, it has a great prospect with regard to imaging cells and cellular substructures, such as mitochondria, which play crucial roles in cell metabolism and death. Indeed, three-dimensional real-time imaging in zebrafish provides a dynamic and visual tool for studying the absorption, distribution, metabolism and excretion of drugs. In this article, more directions and inspiration can be presented for the exploration of non-invasive pharmacokinetic research and intuitive drug pathways or mechanisms.

摘要

橙皮素是一种具有多种生理活性的天然产物,也是 的主要成分。我们成功地发现橙皮素具有聚集诱导发光增强(AIEE)性质,它具有大斯托克斯位移、良好的稳定性和优异的生物相容性等显著优势。甲氧基的增加赋予橙皮素比相应的无甲氧基黄酮更大的脂溶性、生物利用度和转运率。此外,我们使用细胞和斑马鱼来探索橙皮素在生物成像中的应用。它在细胞中发出荧光,并特异性靶向线粒体。此外,它与斑马鱼的消化系统和肝脏具有显著的亲和力。由于橙皮素具有独特的 AIEE 现象和稳定的光学性质,它为发现、修饰和合成具有 AIEE 特性的更多分子铺平了道路。此外,它在成像细胞和细胞亚结构(如线粒体)方面具有广阔的前景,线粒体在细胞代谢和死亡中起着至关重要的作用。事实上,在斑马鱼中的三维实时成像为研究药物的吸收、分布、代谢和排泄提供了一个动态和直观的工具。在本文中,为探索非侵入性药代动力学研究和直观的药物途径或机制提供了更多的方向和启示。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a26f/10301000/2826866f8715/molecules-28-04592-g001.jpg

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